圧力感知ピエゾ抵抗性ファブリック

セール価格$7.20 通常価格$9.50
セール

この圧力センサー用ピエゾ抵抗性ファブリックは、Eeonyxのファブリックに匹敵し、耐久性に優れ、様々なe-テキスタイルの用途に適しています。厚みがあるため、用途は多岐にわたります。

表面抵抗率は10⁴~10⁷オーム/平方の範囲で調整可能です。二次コーティングにより耐久性と耐洗濯性が向上しています。圧力感知ファブリックは30回の洗濯後も抵抗率の顕著な上昇が見られず、長期的な安定性を確保しています。

Composition: 90% Conductive Fiber 10%Spandex
生地の重さ: 130 GSM

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Yunjia Textile Conductive Pressure Sensing Piezoresistive Fabric is in black color
圧力感知ピエゾ抵抗性ファブリック セール価格$7.20から 通常価格$9.50
Type

Electrode

Piezoresistive

Raw Material

Silver

Carbon

Electrical Resistance

0.1 -1 Ω

10⁴–10⁷ Ω

Piezoresistive Resistance Data Sheet

A sandwich structure using conductive PCB silver thin films on the top and bottom layers. Under a 0–2 kg applied force over a 1 cm-diameter contact area, the values shown represent the average of five measurements. This dataset serves as a material performance reference.



01

Piezoresistive

A piezoresistive textile sensor converts applied pressure into resistance changes using a layered fabric structure. Zebra-pattern conductive electrodes sandwich a carbon-based piezoresistive fabric. Under compression, internal contact points increase, lowering resistance. Finer electrode line spacing generates denser sensing matrices, improving spatial resolution, flexibility, and signal stability for wearables, soft robotics, and pressure-mapping systems.






02

Capacitive

A capacitive textile sensor consists of flexible top and bottom conductive electrodes separated by a soft dielectric textile layer. When pressure is applied, the distance between electrodes decreases and the effective dielectric structure changes, resulting in a measurable capacitance variation. This fabric-based architecture provides excellent conformability, stable signal response, and reliable pressure sensing on curved or dynamic surfaces.


01

Piezoresistive

A piezoresistive textile sensor converts applied pressure into resistance changes using a layered fabric structure. Zebra-pattern conductive electrodes sandwich a carbon-based piezoresistive fabric. Under compression, internal contact points increase, lowering resistance. Finer electrode line spacing generates denser sensing matrices, improving spatial resolution, flexibility, and signal stability for wearables, soft robotics, and pressure-mapping systems.






02

Capacitive

A capacitive textile sensor consists of flexible top and bottom conductive electrodes separated by a soft dielectric textile layer. When pressure is applied, the distance between electrodes decreases and the effective dielectric structure changes, resulting in a measurable capacitance variation. This fabric-based architecture provides excellent conformability, stable signal response, and reliable pressure sensing on curved or dynamic surfaces.


Every sensing application comes with unique technical requirements

We provide flexible customization services across electrode layout, pattern geometry, and conductive textile structures. In addition to silver-based materials, we also offer alternative conductive options such as stainless steel and other alloy-based conductive textiles to meet different performance, durability, and cost targets.

Matrix Layout

Flexible Trace

High Density Pattern

FAQ